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Potential Applications of Concentrated Solar Thermal Technologies in the Australian Minerals Processing and Extractive Metallurgical Industry

机译:集中式太阳能热技术在澳大利亚矿物加工和提取冶金行业中的潜在应用

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The Australian minerals processing and extractive metallurgy industries are responsible for about 20% of Australia's total greenhouse gas (GHG) emissions. This article reviews the potential applications of concentrated solar thermal (CST) energy in the Australian minerals processing industry to reduce this impact. Integrating CST energy into these industries would reduce their reliance upon conventional fossil fuels and reduce GHG emissions. As CST technologies become more widely deployed and cheaper, and as fuel prices rise, CST energy will progressively become more competitive with conventional energy sources. Some of the applications identified in this article are expected to become commercially competitive provided the costs for pollution abatement and GHG mitigation are internalized. The areas of potential for CST integration identified in this study can be classed as either medium/ low-temperature or high-temperature applications. The most promising medium/low-grade applications are electricity generation and low grade heating of liquids. Electricity generation with CST energy—also known as concentrated solar power—has the greatest potential to reduce GHG emissions out of all the potential applications identified because of the 24/7 dis-patchability when integrated with thermal storage. High-temperature applications identified include the thermal decomposition of alumina and the calcination of limestone to lime in solar kilns, as well as the production of syngas from natural gas and carbonaceous materials for various metallurgical processes including nickel and direct reduced iron production. Hybridization and integration with thermal storage could enable CST to sustain these energy-intensive metallurgical processes continuously. High-temperature applications are the focus of this paper.
机译:澳大利亚的矿物加工和提取冶金行业约占澳大利亚总温室气体(GHG)排放量的20%。本文回顾了集中式太阳能热(CST)能源在澳大利亚矿物加工行业中的潜在应用,以减少这种影响。将CST能源整合到这些行业中将减少它们对常规化石燃料的依赖并减少温室气体排放。随着CST技术的广泛使用和廉价化以及燃料价格的上涨,CST能源将逐渐变得与传统能源更具竞争力。如果将减少污染和减少温室气体的成本内部化,则本文确定的某些应用程序有望实现商业竞争。在这项研究中确定的CST集成的潜在领域可以归类为中/低温或高温应用。最有前途的中/低等级应用是发电和液体的低等级加热。由于CST能源(也称为集中太阳能)发电与储热装置集成时具有24/7的可调度性,因此在所有已确定的潜在应用中,减少温室气体排放的潜力最大。确定的高温应用包括氧化铝在太阳能窑中的热分解和石灰石煅烧成石灰,以及由天然气和含碳材料生产的合成气,用于各种冶金工艺,包括镍和直接还原铁的生产。与储热器的混合和集成可以使CST能够连续维持这些能耗大的冶金过程。高温应用是本文的重点。

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